Enhanced thermal conductivity of form-stable phase change composite with single-walled carbon nanotubes for thermal energy storage

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作者
Tingting Qian
Jinhong Li
Wuwei Feng
Hong’en Nian
机构
[1] Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes,
[2] National Laboratory of Mineral Materials,undefined
[3] School of Materials Science and Technology,undefined
[4] China University of Geosciences (Beijing),undefined
[5] Key Laboratory of Comprehensive and Highly Efficient Utilization of Salt Lake Resources,undefined
[6] Qinghai Institute of Salt Lakes,undefined
[7] Chinese Academy of Sciences,undefined
[8] Qinghai 266000,undefined
[9] P.R. China.,undefined
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摘要
A striking contrast in the thermal conductivities of polyethylene glycol (PEG)/diatomite form-stable phase change composite (fs-PCC) with single-walled carbon nanotubes (SWCNs) as nano-additive has been reported in our present study. Compared to the pure PEG, the thermal conductivity of the prepared fs-PCC has increased from 0.24 W/mK to 0.87 W/Mk with a small SWCNs loading of 2 wt%. SWCNs are decorated on the inner surface of diatomite pores whilst retaining its porous structure. Compared to PEG/diatomite fs-PCC, the melting and solidification time of the PEG/diatomite/SWCNs fs-PCC are respectively decreased by 54.7% and 51.1%, and its thermal conductivity is 2.8 times higher. The composite can contain PEG as high as 60 wt% and maintain its original shape perfectly without any PEG leakage after subjected to 200 melt-freeze cycles. DSC results indicates that the melting point of the PEG/diatomite/SWCNs fs-PCC shifts to a lower temperature while the solidification point shifts to a higher temperature due to the presence of SWCNs. Importantly, the use of SWCNs is found to have clear beneficial effects for enhancing the thermal conductivity and thermal storage/release rates, without affecting thermal properties, chemical compatibility and thermal stability. The prepared PEG/diatomite/SWCNs fs-PCC exhibits excellent chemical and thermal durability and has potential application in solar thermal energy storage and solar heating.
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